Svedruzić Zeljko M, Spivey H Olin
Department of Biochemistry and Molecular Biology, 246 B Noble Research Center, Oklahoma State University, Stillwater, Oklahoma 74078, USA.
Proteins. 2006 May 15;63(3):501-11. doi: 10.1002/prot.20862.
The exceptionally high protein concentration in living cells can favor functional protein-protein interactions that can be difficult to detect with purified proteins. In this study we describe specific interactions between mammalian D-glyceraldehyde-3-phosphate dehydrogenase (GAPDH) and L-lactate dehydrogenase (LDH) isozymes from heart and muscle. We use poly(ethylene-glycol) (PEG)-induced coprecipitation and native agarose electrophoresis as two independent methods uniquely suited to mimic some of the conditions that can favor protein-protein interaction in living cells. We found that GAPDH interacts with heart or muscle isozymes of LDH with approximately one-to-one stoichiometry. The interaction is specific; GAPDH shows interaction with two LDH isozymes that have very different net charge and solubility in PEG solution, while no interaction is observed with GAPDH from other species, other NAD(H) dehydrogenases, or other proteins that have very similar net charge and molecular mass. Analytical ultracentrifugation showed that the LDH and GAPDH complex is insoluble in PEG solution. The interaction is abolished by saturation with NADH, but not by saturation with NAD(+) in correlation with GAPDH solubility in PEG solution. The crystal structures show that GAPDH and LDH isozymes share complementary size, shape, and electric potential surrounding the active sites. The presented results suggest that GAPDH and LDH have a functional interaction that can affect NAD(+)/NADH metabolism and glycolysis in living cells.
活细胞中异常高的蛋白质浓度有利于功能性蛋白质-蛋白质相互作用,而这种相互作用用纯化的蛋白质可能难以检测到。在本研究中,我们描述了哺乳动物甘油醛-3-磷酸脱氢酶(GAPDH)与来自心脏和肌肉的L-乳酸脱氢酶(LDH)同工酶之间的特异性相互作用。我们使用聚乙二醇(PEG)诱导的共沉淀和天然琼脂糖电泳作为两种独立的方法,它们特别适合模拟一些有利于活细胞中蛋白质-蛋白质相互作用的条件。我们发现GAPDH与LDH的心脏或肌肉同工酶以大约一对一的化学计量比相互作用。这种相互作用具有特异性;GAPDH与两种在PEG溶液中净电荷和溶解度非常不同的LDH同工酶表现出相互作用,而与来自其他物种的GAPDH、其他NAD(H)脱氢酶或其他净电荷和分子量非常相似的蛋白质未观察到相互作用。分析超速离心表明,LDH和GAPDH复合物在PEG溶液中不溶。与GAPDH在PEG溶液中的溶解度相关,该相互作用被NADH饱和消除,但未被NAD(+)饱和消除。晶体结构表明,GAPDH和LDH同工酶在活性位点周围具有互补的大小、形状和电势。所呈现的结果表明,GAPDH和LDH具有功能性相互作用,可影响活细胞中的NAD(+)/NADH代谢和糖酵解。